Buffer bearing device of glass adjustable tool
By designing a buffer bearing device for adjustable glass fixtures, the problems of insufficient size adaptability and buffering performance in existing technologies have been solved, achieving stable bearing and protection of glass of different specifications, and improving the efficiency and safety of glass processing and transportation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-14
- Publication Date
- 2026-04-10
AI Technical Summary
In existing glass processing and transportation equipment, the glass bearing devices cannot adapt to different size requirements and have insufficient cushioning performance, resulting in glass that is easily broken and scratched, affecting the efficiency and safety of processing and transportation.
A buffer bearing device for an adjustable glass fixture was designed. It adopts a synchronous adjustment component and an oblique adjustment slider component, combined with a right-angle positioning block and a vertical buffer strip, to achieve rapid adjustment and double buffer protection for glass of different sizes, ensuring the stability and safety of the glass during transportation.
It enables rapid and precise adjustment of glass of different specifications, improves the versatility and efficiency of the device, reduces production costs, reduces the risk of glass breakage and scratches, and improves yield and quality.
Smart Images

Figure CN224105057U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to glass processing and transportation equipment technical field, especially a kind of buffer bearing device of glass adjustable tool. BACKGROUND
[0002] In the glass processing and transportation industry, glass is extremely high in stability and protectivity requirements of bearing device due to its fragile and easily scratched characteristics. The existing glass bearing tool has many deficiencies: on the one hand, the traditional tool is designed with fixed size, which is difficult to adapt to the bearing needs of different specifications of glass. When different sizes of glass need to be carried, different tools often need to be replaced, which is cumbersome and costly. On the other hand, the existing bearing device has poor buffering performance. In the process of handling and processing, glass is easy to break or scratch due to impact and vibration, causing material waste and economic loss. Therefore, there is an urgent need for a glass bearing device that can adjust the size and has good buffering performance to improve the efficiency and safety of glass processing and transportation.
[0003] Therefore, the existing glass processing and transportation equipment technology field needs to be further improved. SUMMARY
[0004] The utility model aims at providing a kind of buffer bearing device of glass adjustable tool, solve the problem that existing glass bearing tool cannot adapt to different sizes of glass and the problem of insufficient buffering performance, realize the stable bearing and effective protection of different specifications of glass, improve the safety and efficiency in the process of glass processing and transportation.
[0005] In order to achieve the above purpose, the utility model adopts the following scheme: a kind of buffer bearing device of glass adjustable tool, including base plate, the base plate is provided with the buffer bearing plate assembly of up and down buffer, four oblique adjustment slider assemblies are evenly distributed around the center circumference of the buffer bearing plate assembly on the buffer bearing plate assembly, right angle positioning block is provided on the oblique adjustment slider assembly, vertical buffer strip is provided outside the right angle positioning block, the buffer bearing plate assembly is provided with synchronous adjustment assembly for controlling four oblique adjustment slider assemblies to synchronize opening and closing.
[0006] Further, the buffer bearing plate assembly includes a plurality of vertical guide holes provided on the base plate, a vertical guide shaft is movably arranged in the vertical guide hole, a buffer plate is connected between a plurality of vertical guide shafts, and a spring structure is provided on the vertical guide shaft and is compressed on the lower surface of the buffer plate and the upper surface of the base plate.
[0007] Further, four oblique adjustment slider assemblies are respectively arranged towards four corner directions of the base plate.
[0008] Further, the oblique adjustment slider assembly comprises an oblique guide groove arranged on the buffer plate, and an oblique slider is movably arranged in the oblique guide groove.
[0009] Further, the right-angle positioning block comprises a vertical positioning rod arranged on the oblique slider, the vertical positioning rod is provided with right-angle grooves along the height direction and a triangular supporting surface arranged at the lower end of the right-angle grooves, and the four right-angle grooves are matched with four corners of the square glass panel.
[0010] Further, the synchronous adjustment assembly comprises a rotating disc arranged at the center of the buffer plate, four eccentric hinge parts are uniformly distributed around the center of the rotating disc, a second hinge part is arranged on the oblique slider, and a connecting rod is hinged between the eccentric hinge part and the corresponding second hinge part.
[0011] Further, a worm transmission adjustment assembly for adjusting the rotating angle of the rotating disc is arranged between the rotating disc and the buffer plate.
[0012] Therefore, the glass processing and transporting device has the advantages that the synchronous adjustment assembly and the oblique adjustment slider assembly are matched, the device can quickly and accurately adjust the glass of different sizes without replacing the tool, the universality and use efficiency of the device are improved, and the production cost is reduced.
[0013] The glass processing and transporting device solves the problems in the prior art, has the following advantages through the structural arrangement, the synchronous adjustment assembly and the oblique adjustment slider assembly are matched, the device can quickly and accurately adjust the glass of different sizes without replacing the tool, the universality and use efficiency of the device are improved, and the production cost is reduced. BRIEF DESCRIPTION OF DRAWINGS
[0014] Figure 1 It is a perspective view of the device;
[0015] Figure 2 It is a front view of the device;
[0016] Figure 3 It is a sectional view of the device;
[0017] Figure 4 It is another sectional view of the device. DETAILED DESCRIPTION
[0018] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of the present application.
[0019] Please refer to Figures 1-4 The utility model provides a kind of buffer bearing device of glass adjustable tool, including substrate 1, the substrate 1 is provided with the buffer bearing plate assembly 2 of up and down buffer, four oblique adjustment slider assemblies 3 are uniformly distributed around the buffer bearing plate assembly 2 center circumference on the buffer bearing plate assembly 2, right angle positioning block 4 is provided on the oblique adjustment slider assembly 3, vertical buffer strip 5 is provided outside the right angle positioning block 4, synchronous adjustment assembly 6 for controlling four the synchronous opening and closing of oblique adjustment slider assembly 3 is provided on the buffer bearing plate assembly 2.
[0020] Substrate 1 is fixed on workbench or transport equipment suitable position, ensure that substrate 1 is installed firm and stable.Vertical guide shaft 202 is inserted into vertical guide hole 201 on substrate 1 respectively, then buffer plate 203 is connected with vertical guide shaft 202, then spring structure 204 is provided outside vertical guide shaft 202, so that spring structure 204 is pressed to the lower surface of buffer plate 203 and the upper surface of substrate 1, the installation of buffer bearing plate assembly 2 is completed.
[0021] Oblique guide slot 301 is opened on buffer plate 203 corresponding position, oblique slider 302 is installed in oblique guide slot 301, and oblique adjustment slider assembly 3 is formed. The vertical positioning rod 401 of right angle positioning block 4 is installed on oblique slider 302, and vertical buffer strip 5 is installed outside right angle positioning block 4.
[0022] Rotary circular plate 601 is arranged at the center of buffer plate 203, four eccentric hinge parts 602 are uniformly distributed around the center of rotary circular plate 601, second hinge part 603 is arranged on oblique slider 302, eccentric hinge part 602 and corresponding second hinge part 603 are hinged through connecting rod 604, and the installation of synchronous adjustment assembly 6 is completed. Finally, worm transmission adjustment assembly 100 is installed between rotary circular plate 601 and buffer plate 203.
[0023] When glass needs to be carried, the rotation angle of rotary circular plate 601 is adjusted through worm transmission adjustment assembly 100 according to the size of glass. When rotary circular plate 601 rotates, eccentric hinge part 602 drives connecting rod 604 to move, and then oblique slider 302 slides in oblique guide slot 301, four oblique adjustment slider assemblies 3 are synchronously opened and closed, and right angle positioning block 4 is adjusted to a suitable position.
[0024] The four corners of the glass are clamped into the right-angle recesses 402 of the four right-angle positioning blocks 4 respectively, and the triangular supporting surfaces 403 support the glass. During the placing of the glass, the spring structure 204 of the buffer supporting plate assembly 2 is compressed by the gravity of the glass, thereby achieving vertical buffering; and the vertical buffer strips 5 provide buffering protection for the glass in the horizontal direction, thereby preventing the glass from being impacted.
[0025] During use, if it is necessary to replace the glass of different sizes, the position of the oblique adjustment sliding block assembly 3 can be adjusted again through the worm drive adjustment assembly 100. The elasticity of the spring structure 204 is checked regularly, and if the spring elasticity is found to be weakened or damaged, the spring structure 204 is replaced in time; the sliding condition of the oblique sliding block 302 in the oblique guide groove 301 is checked to ensure smooth sliding, and if there is a jamming phenomenon, the oblique guide groove 301 is cleaned and lubricated in time; the connection parts of various components are checked to ensure firm connection and prevent loosening.
[0026] The buffer supporting plate assembly 2 comprises a plurality of vertical guide holes 201 arranged on the base plate 1, a vertical guide shaft 202 movably arranged in the vertical guide hole 201, and a buffer plate 203 connected between the vertical guide shafts 202.
[0027] The four oblique adjustment sliding block assemblies 3 are arranged towards the four corner directions of the base plate 1.
[0028] The oblique adjustment sliding block assembly 3 comprises an oblique guide groove 301 arranged on the buffer plate 203, and an oblique sliding block 302 movably arranged in the oblique guide groove 301.
[0029] The right-angle positioning block 4 comprises a vertical positioning rod 401 arranged on the oblique sliding block 302, a right-angle recess 402 arranged along the height direction of the vertical positioning rod 401, and a triangular supporting surface 403 arranged at the lower end of the right-angle recess 402, and the four right-angle recesses 402 cooperate to position the four corners of the square glass panel.
[0030] The synchronous adjustment assembly 6 comprises a rotating disc 601 arranged at the center of the buffer plate 203, four eccentric hinge parts 602 uniformly arranged around the center of the rotating disc 601, a second hinge part 603 arranged on the oblique sliding block 302, and a connecting rod 604 hingedly connected between the eccentric hinge part 602 and the corresponding second hinge part 603.
[0031] The worm gear transmission adjusting assembly 100 is arranged between the rotating circular plate 601 and the buffer plate 203 and is used for adjusting the rotating angle of the rotating circular plate 601.
[0032] The basic principle and main features of the utility model and the advantages of the utility model are shown and described above, and the person skilled in the art should understand that the utility model is not limited by the above-mentioned embodiments, and the above-mentioned embodiments and the description in the specification are only for illustrating the principle of the utility model, and various changes and improvements of the utility model can be made without departing from the spirit and scope of the utility model, and these changes and improvements all fall within the scope of the utility model claimed for protection. The protection scope of the utility model is defined by the appended claims and equivalents thereof.
Claims
1. A cushioned carrier device for a glass adjustable tooling, comprising a base plate (1), characterized in that: The base plate (1) is provided with a buffer bearing plate assembly (2) with up and down buffers, four oblique adjustment slider assemblies (3) are evenly distributed around the central circumference of the buffer bearing plate assembly (2), a right-angle positioning block (4) is arranged on the oblique adjustment slider assembly (3), a vertical buffer strip (5) is arranged outside the right-angle positioning block (4), and a synchronous adjustment assembly (6) for controlling the synchronous opening and closing of the four oblique adjustment slider assemblies (3) is arranged on the buffer bearing plate assembly (2).
2. The cushioned carrier of claim 1, wherein: The buffer bearing plate assembly (2) comprises a plurality of vertical guide holes (201) arranged on the base plate (1), a vertical guide shaft (202) is movably arranged in the vertical guide hole (201), a buffer plate (203) is connected between the vertical guide shafts (202), and a spring structure (204) is sleeved on the vertical guide shaft (202) and is pressed on the lower surface of the buffer plate (203) and the upper surface of the base plate (1).
3. The cushioned carrier of claim 2, wherein: The four oblique adjustment slider assemblies (3) are respectively arranged towards the four corner directions of the base plate (1).
4. The cushioned carrier of claim 3, wherein: The oblique adjustment slider assembly (3) comprises an oblique guide groove (301) arranged on the buffer plate (203), and an oblique slider (302) is movably arranged in the oblique guide groove (301).
5. The cushioned carrier of claim 4, wherein: The right-angle positioning block (4) comprises a vertical positioning rod (401) arranged on the oblique slider (302), a right-angle groove (402) is arranged on the vertical positioning rod (401) in the height direction, and a triangular support surface (403) is arranged at the lower end of the right-angle groove (402), and four right-angle grooves (402) are matched to position four corners of a square glass panel.
6. The cushioned carrier of claim 5, wherein: The synchronous adjustment assembly (6) comprises a rotating disc (601) arranged at the center of the buffer plate (203), four eccentric hinge parts (602) are evenly distributed around the center of the rotating disc (601), a second hinge part (603) is arranged on the oblique slider (302), and a connecting rod (604) is hinged between the eccentric hinge part (602) and the corresponding second hinge part (603).
7. The cushioned carrier of claim 6, wherein: A worm gear transmission adjustment assembly (100) is arranged between the rotating disc (601) and the buffer plate (203) for adjusting the rotation angle of the rotating disc (601).